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DS1621 데이터시트(PDF) 2 Page - Dallas Semiconductor |
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DS1621 데이터시트(HTML) 2 Page - Dallas Semiconductor |
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2 / 16 page ![]() DS1621 2 of 16 102299 DETAILED PIN DESCRIPTION Table 1 PIN SYMBOL DESCRIPTION 1 SDA Data input/output pin for 2-wire serial communication port. 2 SCL Clock input/output pin for 2-wire serial communication port. 3 TOUT Thermostat output. Active when temperature exceeds TH; will reset when temperature falls below TL. 4 GND Ground pin. 5 A2 Address input pin. 6 A1 Address input pin. 7 A0 Address input pin. 8 VDD Supply voltage input power pin. (2.7V – 5.5V) OPERATION Measuring Temperature A block diagram of the DS1621 is shown in Figure 1. The DS1621 measures temperatures through the use of an onboard proprietary temperature measurement technique. A block diagram of the temperature measurement circuitry is shown in Figure 2. The DS1621 measures temperature by counting the number of clock cycles that an oscillator with a low temperature coefficient goes through during a gate period determined by a high temperature coefficient oscillator. The counter is preset with a base count that corresponds to –55 °C. If the counter reaches 0 before the gate period is over the temperature register, which is also preset to the –55 °C value, is incremented indicating that the temperature is higher than –55 °C. At the same time, the counter is preset with a value determined by the slope accumulator circuitry. This circuitry is needed to compensate for the parabolic behavior of the oscillators over temperature. The counter is then clocked again until it reaches 0. If the gate period is still not finished, then this process repeats. The slope accumulator is used to compensate for the nonlinear behavior of the oscillators over temperature, yielding a high resolution temperature measurement. This is done by changing the number of counts necessary for the counter to go through for each incremental degree in temperature. To obtain the desired resolution, both the value of the counter and the number of counts per °C (the value of the slope accumulator) at a given temperature must be known. This calculation is done inside the DS1621 to provide 0.5 °C resolution. The temperature reading is provided in a 9–bit, two’s complement reading by issuing the READ TEMPERATURE command. Table 2 describes the exact relationship of output data to measured temperature. The data is transmitted through the 2–wire serial interface, MSB first. The DS1621 can measure temperature over the range of –55 °C to +125 °C in 0.5°C increments. For Fahrenheit usage a lookup table or conversion factor must be used. |
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